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Service Life Heat Exposure Effects Aluminm Aluminum Extrusion Crash Properties Relationship Under Static Axial Loading

机译:静态轴向载荷下的使用寿命热曝光效果和铝铝挤压碰撞性能关系

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Relationship between service life heat exposure and extruded aluminum structural crashworthiness has been conducted. This research, part of a broader program, consists of investigating five aluminum alloy extrusions each of which is subjected to two heat treatments. The aluminum extrusion investigated are 6063T6, 6061T6, 6260T6, 6014T6, and 7129T6. The two heat treatments are 177°C for 30 minutes and 200°C for 24 hours. The 200°C/24 hours treatment represents the most severe thermal exposure I.e. components adjacent to exhaust pipes and manifolds. The 200°C heat treatment is in addition to the 177°C for 30 minutes. All specimens were subjected to the reference 177°C for 30 minutes treatment. These ten crash members were subjected to static axial crushing at a speed of 25.4 mm/minute (1 in/min). Force-time data was collected and responses were plotted for all tests. Force-displacement responses were integrated for the crush energy management and mean axial crush load for each of the aluminum extruded crash members. Bar charts were then generated to describe the crush loads and energy management behaviors of the various aluminum alloys and associated heat treatments. Severe service life simulated heat exposure was found to affect the mean crush load and crush energy management of the aluminum structural crush members. The heat exposure effects on the crashworthiness of the extruded aluminum members ranged from a reduction of 8% to over 20% in the mean crush load and crush energy management with highest variation observed with the 6260T6 aluminum extrusion.
机译:已经进行了使用寿命热曝光与挤出铝结构牢固的关系。本研究包括更广泛的计划,包括研究五种铝合金挤出机,每个铝合金挤出挤出均受到两个热处理。研究的铝挤出为6063T6,6061T6,6260T6,6014T6和7129T6。两个热处理为177℃,30分钟,200℃24小时。 200°C / 24小时的处理代表了最严重的热曝光I.E.与排气管和歧管相邻的组件。 200℃的热处理除了177℃的30分钟之外。将所有标本进行参考177℃,处理30分钟。这些十个碰撞构件以25.4毫米/分钟(1英寸/分钟)的速度进行静态轴压。收集力时间数据,绘制了所有测试的响应。为每个铝挤压碰撞构件的挤压能量管理和平均轴压载荷集成了力 - 位移响应。然后产生条形图以描述各种铝合金和相关热处理的压碎负荷和能量管理行为。发现严重的使用寿命模拟热暴露会影响铝结构压碎构件的平均压碎负荷和挤压能量管理。对挤出铝构件的耐火性的热曝光效应范围从平均压碎负载和粉碎能量管理的减少8%至超过20%,以6260T6铝挤出观察到的最高变化。

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